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The Use of Primary Human Fibroblasts for Monitoring Mitochondrial Phenotypes in the Field of Parkinson's Disease
Published on: October 3, 2012
Mitochondrial damage-associated inflammation highlights biomarkers in PRKN/PINK1 parkinsonism
Max Borsche1,2, Inke R König3, Sylvie Delcambre4
1Institute of Neurogenetics, University of Lübeck, Lübeck, Germany.
Abstract:
There is increasing evidence for a role of inflammation in Parkinson's disease. Recent research in murine models suggests that parkin and PINK1 deficiency leads to impaired mitophagy, which causes the release of mitochondrial DNA (mtDNA), thereby triggering inflammation. Specifically, the CGAS (cyclic GMP-AMP synthase)-STING (stimulator of interferon genes) pathway mitigates activation of the innate immune system, quantifiable as increased interleukin-6 (IL6) levels. However, the role of IL6 and circulating cell-free mtDNA in unaffected and affected individuals harbouring mutations in PRKN/PINK1 and idiopathic Parkinson's disease patients remain elusive. We investigated IL6, C-reactive protein, and circulating cell-free mtDNA in serum of 245 participants in two cohorts from tertiary movement disorder centres. We performed a hypothesis-driven rank-based statistical approach adjusting for multiple testing. We detected (i) elevated IL6 levels in patients with biallelic PRKN/PINK1 mutations compared to healthy control subjects in a German cohort, supporting the concept of a role for inflammation in PRKN/PINK1-linked Parkinson's disease. In addition, the comparison of patients with biallelic and heterozygous mutations in PRKN/PINK1 suggests a gene dosage effect. The differences in IL6 levels were validated in a second independent Italian cohort; (ii) a correlation between IL6 levels and disease duration in carriers of PRKN/PINK1 mutations, while no such association was observed for idiopathic Parkinson's disease patients. These results highlight the potential of IL6 as progression marker in Parkinson's disease due to PRKN/PINK1 mutations; (iii) increased circulating cell-free mtDNA serum levels in both patients with biallelic or with heterozygous PRKN/PINK1 mutations compared to idiopathic Parkinson's disease, which is in line with previous findings in murine models. By contrast, circulating cell-free mtDNA concentrations in unaffected heterozygous carriers of PRKN/PINK1 mutations were comparable to control levels; and (iv) that circulating cell-free mtDNA levels have good predictive potential to discriminate between idiopathic Parkinson's disease and Parkinson's disease linked to heterozygous PRKN/PINK1 mutations, providing functional evidence for a role of heterozygous mutations in PRKN or PINK1 as Parkinson's disease risk factor. Taken together, our study further implicates inflammation due to impaired mitophagy and subsequent mtDNA release in the pathogenesis of PRKN/PINK1-linked Parkinson's disease. In individuals carrying mutations in PRKN/PINK1, IL6 and circulating cell-free mtDNA levels may serve as markers of Parkinson's disease state and progression, respectively. Finally, our study suggests that targeting the immune system with anti-inflammatory medication holds the potential to influence the disease course of Parkinson's disease, at least in this subset of patients.
Insights
Inflammation markers, including interleukin-6 (IL6) and cell-free mitochondrial DNA (mtDNA), are elevated in Parkinson's disease patients with PRKN/PINK1 mutations. These markers may indicate disease state and progression, suggesting potential anti-inflammatory treatment strategies.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Inflammation is increasingly implicated in Parkinson's disease (PD) pathogenesis.
- Parkin (PRKN) and PINK1 mutations impair mitophagy, leading to mitochondrial DNA (mtDNA) release and innate immune activation via the CGAS-STING pathway.
- The role of interleukin-6 (IL6) and cell-free mtDNA in individuals with PRKN/PINK1 mutations or idiopathic PD is not well understood.
Purpose of the Study:
- To investigate serum levels of IL6, C-reactive protein, and cell-free mtDNA in patients with idiopathic PD and those with PRKN/PINK1 mutations (biallelic and heterozygous).
- To explore the correlation of these markers with disease duration and their potential as diagnostic or prognostic indicators.
- To provide functional evidence for the role of heterozygous PRKN/PINK1 mutations in PD risk.
Main Methods:
- Serum samples from 245 participants across two cohorts (German and Italian) were analyzed.
- Measurements included IL6, C-reactive protein, and circulating cell-free mtDNA.
- A hypothesis-driven, rank-based statistical approach with multiple testing adjustment was employed.
Main Results:
- Elevated IL6 levels were detected in patients with biallelic PRKN/PINK1 mutations compared to healthy controls, with evidence of a gene dosage effect.
- IL6 levels correlated with disease duration in PRKN/PINK1 mutation carriers but not in idiopathic PD patients.
- Increased cell-free mtDNA was observed in both biallelic and heterozygous PRKN/PINK1 mutation carriers compared to idiopathic PD patients, with unaffected carriers showing normal levels. Cell-free mtDNA effectively discriminated between idiopathic PD and heterozygous PRKN/PINK1-linked PD.
Conclusions:
- The study implicates inflammation from impaired mitophagy and mtDNA release in the pathogenesis of PRKN/PINK1-linked PD.
- IL6 and cell-free mtDNA may serve as markers for disease state and progression in individuals with PRKN/PINK1 mutations.
- Targeting the immune system with anti-inflammatory therapies could potentially modify disease course in a subset of PD patients.
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